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Chaotic behavior of turbine regulating system for hydropower station under effect of nonlinear turbine characteristics

机译:非线性汽轮机特性水电站涡轮机调节系统的混沌行为

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This paper studies the chaotic behavior of turbine regulating system (TRS) for hydropower station under effect of nonlinear turbine characteristics (NTC). Firstly, the nonlinear fourth-order state equation that describes the dynamic behavior of TRS under effect of NTC is established and verified. Then, the chaotic behaviors of TRS, i.e. existence of chaotic motion and path to chaotic motion, are studied. The effects of sensitivity parameters on the chaotic behavior of TRS are analyzed. Finally, the effect mechanism of NTC on chaotic behavior of TRS is revealed. The guidance for practical applications is clarified. The results show that, with the change of governor parameters, the dynamic behavior of TRS transforms among damped oscillation, persistent oscillation, frequency division and chaos phenomenon. The chaotic motion only appears under the particular value ranges of governor parameters. The path to chaotic motion of TRS is period doubling bifurcation. The chaotic motion is more likely to appear when the stability of TRS is worse. The reasonable selection of sensitivity parameters can eliminate or weaken the chaotic motion. The chaos phenomenon is caused by the nonlinear speed characteristics (NSC), not the nonlinear head characteristics. The effect of NSC is related to the values of governor parameters.
机译:本文研究了非线性汽轮机特性(NTC)效果下水电站涡轮调节系统(TRS)的混沌行为。首先,建立并验证描述NTC效果下TRS动态行为的非线性四阶状态方程。然后,研究了TRS的混沌行为,即混沌运动的存在和混沌运动的路径。分析了灵敏度参数对TRS混沌行为的影响。最后,揭示了NTC对TRS混沌行为的影响机制。澄清了实际应用的指导。结果表明,随着调速器参数的变化,TRS的动态行为在阻尼振荡,持续振荡,频分和混沌现象中变换。混沌运动仅出现在调速器参数的特定值范围内。 TRS的混沌运动的路径是时期倍增分叉。当TRS的稳定性更严重时,混沌运动更可能出现。合理选择灵敏度参数可以消除或削弱混沌运动。混沌现象是由非线性速度特性(NSC)引起的,而不是非线性头部特性引起的。 NSC的效果与调速器参数的值相关。

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